首页> 外文会议>Panhellenic Conference Informatics(PCI 2005); 20051111-13; Volos(GR) >Computational Identification of Regulatory Factors Involved in MicroRNA Transcription
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Computational Identification of Regulatory Factors Involved in MicroRNA Transcription

机译:涉及MicroRNA转录的调控因子的计算鉴定

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MicroRNAs (miRNAs) are non-coding RNA molecules that bind to and translationally repress mRNA transcripts. Currently ~1345 miRNAs have been identified in at least twelve species through experimental and computational approaches. Here, we report on a field not yet thoroughly investigated: the transcriptional regulation of miRNAs. Adequately locating miRNA promoter regions will provide a reasonable search space for computational and experimental studies to determine regulatory factors that drive miRNA transcription. Insight in to the factors that control miRNA transcription may provide clues regarding more complicated mechanisms of miRNA expression control in a developing organism. We use a novel Expressed Sequence Tag (EST) based approach to approximate promoter regions for intergenic miRNAs in order to detect specific and over-represented regulatory elements. We find that miRNA promoter regions may be enriched for binding sites that recruit transcription factors (TFs) involved in development, including several homeobox TFs such as HOXA3 and Ncx. Additionally, we use clustering techniques to cluster miRNAs according to tissue specificity to find tissue-specific regulatory elements. We find a few over-represented binding sites in brain-specific miRNA promoter regions, some of which recruit TFs involved specifically with the development of the nervous system. Based on the results we suggest an interesting mechanism for in vivo miRNA expression control. The EST-based pri-miRNA assembly program will be made available at the website of the DIANA-group by the time of publication (http://diana.pcbi.upenn.edu).
机译:微小RNA(miRNA)是非编码RNA分子,可与mRNA转录物结合并在翻译时抑制其转录。目前,通过实验和计算方法已经在至少十二个物种中鉴定出约1345个miRNA。在这里,我们报道了一个尚未彻底研究的领域:miRNA的转录调控。适当定位miRNA启动子区域将为计算和实验研究确定驱动miRNA转录的调控因子提供合理的搜索空间。深入了解控制miRNA转录的因素可能会提供有关发育中生物体中miRNA表达控制的更复杂机制的线索。我们使用一种新颖的基于表达序列标签(EST)的方法来近似启动子区域的基因间miRNA,以检测特定和过度代表的调控元件。我们发现,miRNA启动子区域可能会富集募集参与发展的转录因子(TF)的结合位点,包括几个同源盒TF,例如HOXA3和Ncx。此外,我们根据组织特异性使用聚类技术对miRNA进行聚类,以发现组织特异性调控元件。我们在大脑特定的miRNA启动子区域中发现了一些过度代表的结合位点,其中一些募集的TF尤其与神经系统的发育有关。根据结果​​,我们提出了一种有趣的体内miRNA表达控制机制。基于EST的pri-miRNA组装程序将在发布时在DIANA-group的网站上提供(http://diana.pcbi.upenn.edu)。

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